Suppression of forest fuel thermal decomposition under the influence of liquid aerosol and water droplets with additives

Podrobná bibliografie
Parent link:MATEC Web of Conferences
Vol. 141 : Smart Grids 2017.— 2017.— [01017, 5 p.]
Korporativní autor: Национальный исследовательский Томский политехнический университет (ТПУ) Энергетический институт (ЭНИН) Кафедра автоматизации теплоэнергетических процессов (АТП)
Další autoři: Shlegel N. E. Nikita Evgenjevich, Zhdanova A. O. Alena Olegovna, Kralinova S. S. Svetlana Sergeevna, Voytkov I. Ivan
Shrnutí:Title screen
This article presents findings of experimental research into suppressing the thermal decomposition of forest fuel (birch leaves, spruce needles, kindling wood and mixed forest fuel) under conditions of exposure water aerosol and single water droplets, as well as water with specialized additives. We used typical model of fire source with fixed height 0.04 m and varied diameter 0.02-0.1m. Water spraying process, as well as interaction between water and forest fuel was registered using highspeed video camera (recording frequency 6∙105 fps) and panoramic optical methods ("Particle Image Velocimetry", "Shadow Photography"). We established principles of water additions' influence on termination of combustion and thermal decomposition of fire source model.
Jazyk:angličtina
Vydáno: 2017
Témata:
On-line přístup:https://doi.org/10.1051/matecconf/201714101017
http://earchive.tpu.ru/handle/11683/46006
Médium: Elektronický zdroj Kapitola
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=657265

MARC

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330 |a This article presents findings of experimental research into suppressing the thermal decomposition of forest fuel (birch leaves, spruce needles, kindling wood and mixed forest fuel) under conditions of exposure water aerosol and single water droplets, as well as water with specialized additives. We used typical model of fire source with fixed height 0.04 m and varied diameter 0.02-0.1m. Water spraying process, as well as interaction between water and forest fuel was registered using highspeed video camera (recording frequency 6∙105 fps) and panoramic optical methods ("Particle Image Velocimetry", "Shadow Photography"). We established principles of water additions' influence on termination of combustion and thermal decomposition of fire source model. 
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